JPH0367680A - Manufacture of fine ceramic seal - Google Patents

Manufacture of fine ceramic seal

Info

Publication number
JPH0367680A
JPH0367680A JP20364589A JP20364589A JPH0367680A JP H0367680 A JPH0367680 A JP H0367680A JP 20364589 A JP20364589 A JP 20364589A JP 20364589 A JP20364589 A JP 20364589A JP H0367680 A JPH0367680 A JP H0367680A
Authority
JP
Japan
Prior art keywords
raw material
character
molded product
fine ceramic
seal
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
JP20364589A
Other languages
Japanese (ja)
Inventor
Yasuhiko Hatakeyama
泰彦 畠山
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Hataken Co Ltd
Original Assignee
Hataken Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Hataken Co Ltd filed Critical Hataken Co Ltd
Priority to JP20364589A priority Critical patent/JPH0367680A/en
Publication of JPH0367680A publication Critical patent/JPH0367680A/en
Pending legal-status Critical Current

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  • Compositions Of Oxide Ceramics (AREA)

Abstract

PURPOSE:To allow the style of a character formed in calcining process to be deformed due to non-uniform contraction and distortion and a different style of character for each sintered piece by forming a character in a molded product in a stage preceding the calcining process of a fine ceramic which is a raw material for a seal. CONSTITUTION:For raw material preparation, binder, dispersant, lubricant and other ingredients are blended as raw material powder and additives to that physical and mechanical properties required for the manufacture of a fine ceramic chop as a finished product. This raw material powder is molded in a specified shape. That is, a molded product for the seal body is obtained using any appropriate molding technique such as cast molding. Next, a character 3 is carved on the surface in molded product processing. This seal body 1 is baked in a furnace according to a specified calcining pattern. During this calcining process, the chop body 1 which is a mixed molded product develops a non- uniform contraction and distortion in its every part and as a result, the character of the molded product 1 is deformed into a style. After this, the chop undergoes a finishing process and a fine ceramic chop is obtained as a final product.

Description

【発明の詳細な説明】 (産業上の利用分野) 本発明は印鑑の製造方法に関し、さらに詳しくは、同一
印字体の印鑑が複製されることのないファインセラミッ
クス製印鑑の製造方法に関するものである。
[Detailed Description of the Invention] (Industrial Application Field) The present invention relates to a method for manufacturing a seal, and more particularly, to a method for manufacturing a fine ceramic seal in which a seal with the same printed font is not duplicated. .

(従来の技術) 印鑑は各種の証明、承認用に用いられている。(Conventional technology) Seals are used for various certifications and approvals.

特に実印は重要であり、その印影は容易には複製できな
いことが望ましいので、通常は手彫りによって製造され
ている。すなわち、一般に、木、象牙、角頻に代表され
るような自然界の動植物類から得た素材を、一定の形状
に加工し、しかる後に手彫りにより刻字することで実印
が製造されるようになっている。
A registered seal is especially important, and it is desirable that the impression cannot be easily duplicated, so it is usually manufactured by hand carving. In other words, in general, registered seals are manufactured by processing materials obtained from plants and animals in the natural world, such as wood, ivory, and rhododendron, into a certain shape, and then inscribing them by hand. There is.

(発明が解決しようとする課題) このような手彫りでは生産効率が悪いので、機械彫りを
採用することが考えられる。しかし、機械彫りを採用し
た場合には、同一の印鑑が多数複数できてしまうので、
実印の製造には適していない。
(Problems to be Solved by the Invention) Since such hand carving has poor production efficiency, it is conceivable to adopt machine carving. However, if machine engraving is used, many identical seals will be created.
Not suitable for manufacturing registered seals.

一方、近年においては、印鑑用の高級素材として人気の
高い象牙などの入手が困難となってきており、これに代
わる代替え用素材に対する要望が高まってきている。
On the other hand, in recent years, it has become difficult to obtain ivory, which is popular as a high-quality material for seals, and there is a growing demand for alternative materials.

本発明の課題は、この点に鑑みて、従来一般に使用され
てきた印鑑素材を用いることなく、しかも同一物の複製
が極めて困難である新規な印鑑製造方法を提案すること
にある。
In view of this point, it is an object of the present invention to propose a new method for manufacturing a seal stamp, which does not use stamp materials that have been commonly used in the past, and which is extremely difficult to duplicate.

(課題を解決するための手段) 上記の課題を解決するために、本願出願の発明者等は、
近年各種の用途に適用されているファインセラミックス
が充分な強度を有していることに着目し、このファイン
セラミックスを印鑑用素材として利用すると共に、この
ファインセラミックスの焼成時の不均一な収縮性、不均
一な歪み特性に着目して、この収縮性を積極的に利用す
ることにより複製の困難な印鑑を製造する方法を案出し
た。
(Means for solving the problem) In order to solve the above problem, the inventors of the present application, etc.
Focusing on the fact that fine ceramics, which have been used in various applications in recent years, have sufficient strength, we will utilize this fine ceramic as a material for seals, as well as improve the uneven shrinkage of this fine ceramic during firing. Focusing on the non-uniform distortion characteristics, we devised a method for manufacturing seals that are difficult to reproduce by actively utilizing this shrinkage.

すなわち、本発明では、セラミックスの粉末原料を調製
する工程と、調製した前記粉末原料と添加剤を混合する
工程と、混合した前記粉末原料を印鑑本体の形状に成形
する成形工程と、この成形工程を経て形成された印鑑本
体の成形体に対して刻字する成形体加工工程と、刻字さ
れた前記印鑑本体の成形体を焼成する焼成工程を経て、
ファインセラミックス製の印鑑を製造するようにしてい
る。ここに、上記の成形体加工工程において刻字を行う
代わりに、このような加工工程を省略して、印鑑本体の
成形工程において同時に刻字を成形するようにしてもよ
い。
That is, the present invention includes a step of preparing a ceramic powder raw material, a step of mixing the prepared powder raw material and an additive, a molding step of molding the mixed powder raw material into the shape of a seal body, and this molding step. A molded body processing step in which characters are engraved on the molded body of the seal body formed through the process, and a firing process in which the molded body of the stamp body that has been engraved is fired.
We are now manufacturing seals made of fine ceramics. Here, instead of performing the inscription in the molded body processing step described above, such a processing step may be omitted and the inscription may be formed simultaneously in the stamp body forming step.

〈作用) このように、本発明の印鑑製造方法においては、印鑑用
素材としてファインセラミックスを用い、しかも刻字を
セラミックス成形棒を焼成する前の段階で行っている。
<Function> As described above, in the seal manufacturing method of the present invention, fine ceramics are used as the stamp material, and the inscription is performed at a stage before firing the ceramic molded rod.

従って、この段階で各セラミックス成形体に対して同一
の印影を機械彫りしたとしても、焼成工程において成形
体が不均一な収縮性および歪み特性を示すので、焼成後
に得られるファインセラミックス製印鑑においては、そ
れぞれ異なった印影の印鑑となる。
Therefore, even if the same stamp is machine-engraved on each ceramic molded body at this stage, the molded body will exhibit uneven shrinkage and distortion characteristics during the firing process, so the fine ceramic stamp obtained after firing will , each with a different seal impression.

このように、本発明の方法では、同一の印影の印鑑が再
生されることはないので、実印などに代表される印鑑の
製造方法として適している。これに加えて、セラミック
スの原料を適宜選択することによって、各種の色の印鑑
を製造することもできる。
In this manner, the method of the present invention is suitable as a method for manufacturing seals such as registered seals, since seals with the same seal impression are not reproduced. In addition to this, seals of various colors can also be manufactured by appropriately selecting ceramic raw materials.

(実施例) 以下に、第1図ないし第3図を参照して本発明の詳細な
説明する。
(Example) The present invention will be described in detail below with reference to FIGS. 1 to 3.

第1図には、本発明の方法のフローチャートを示しであ
る。この図に示すように、本発明の印鑑製造方法は一般
的なファインセラミックス焼結体の製造方法をそのまま
利用することができる。すなわち、まず、原料の調製工
程Aにおいては、最終製品であるファインセラミックス
製印鑑に必要とされる物理的、機械的特性が得られるよ
うに原料粉末および添加剤としてバインダー、分散剤、
潤滑剤などを調製する。原料粉末としては、att。
FIG. 1 shows a flowchart of the method of the invention. As shown in this figure, the seal manufacturing method of the present invention can utilize a general fine ceramic sintered body manufacturing method as is. That is, first, in raw material preparation step A, raw material powder and additives such as binders, dispersants, and
Prepare lubricants, etc. As the raw material powder, att.

3 、ZrO,、SiC、TiN sサイアロン、窒化
珪素などを用いることができる0次に、混合工程Bにお
いては、これらの各原料を均一に混合して混合粉末を形
成する。
3, ZrO, SiC, TiNsSiAlON, silicon nitride, etc. can be used Next, in the mixing step B, these raw materials are uniformly mixed to form a mixed powder.

成形工程Cにおいては、混合粉末を一定の形状に成形す
る。すなわち、鋳込成形、押出成形、プレス成形、射出
成形などから適宜の成形方法を選んで、印鑑本体の成形
体を形成する0例えば、−船釣に採用されている円柱形
の印鑑本体を成形する。なお、プレス成形法を採用した
場合には、図に示すように、プレス面圧として、例えば
1〜1゜5トン/dに設定する。
In the molding step C, the mixed powder is molded into a certain shape. In other words, select an appropriate molding method from cast molding, extrusion molding, press molding, injection molding, etc. to form the molded body of the seal body. do. In addition, when a press molding method is adopted, as shown in the figure, the press surface pressure is set to, for example, 1 to 1.5 tons/d.

この成形工程を経て得られた印鑑本体の成形体に対して
、次の成形体加工工程りにおいて、その表面に字体を彫
る。第2図に示すように、この印鑑本体1が円柱形の場
合には、その端面2に、超硬工具を用いた機械彫りによ
って、例えば「北條」なる字体3を彫る。この後、焼成
工程Eにおいて、この印鑑本体lを炉内で一定の焼成パ
ターンの下で焼成する。この焼成時には、セラミックス
成形体である印鑑本体1は、各部分において不均−な収
縮、歪みが生じ、この結果、第2図に示す成形棒1の字
体は、第3図に示すような字体4に変形する。この後は
、仕上げ工程を経て、最終製品であるファインセラミッ
クス製の印鑑が得られる。
In the next molded body processing step, characters are engraved on the surface of the molded body of the stamp body obtained through this molding process. As shown in FIG. 2, when the stamp body 1 is cylindrical, a font 3, for example "Hojo", is carved on the end face 2 by machine engraving using a carbide tool. Thereafter, in a firing step E, this stamp body 1 is fired in a furnace under a certain firing pattern. During this firing, the stamp body 1, which is a ceramic molded body, undergoes uneven shrinkage and distortion in each part, and as a result, the font of the molded rod 1 shown in FIG. 2 changes from the font shown in FIG. 3. Transforms into 4. After this, a final product, a fine ceramic seal, is obtained through a finishing process.

表1には、上記の焼成工程における一般的な焼成パター
ンを代表的な原料について示しである。
Table 1 shows general firing patterns in the above firing process for typical raw materials.

(表  1 ) TiN 焼成パターン 5°C/山  10°C/ −t−2h     11
0°C/ 、i。
(Table 1) TiN firing pattern 5°C/peak 10°C/-t-2h 11
0°C/, i.

OoC−−→900”C−一→1700℃+ 1700
’C−−→0°C3iCOoC−一→1ooO℃−−→
215o℃−−→2150″C−一→す作p 5°C/ si、I     10’C/ 、i、  
       lh         110°C/1
1五。
OoC--→900"C-1→1700℃+1700
'C--→0°C3iCOoC-1→1ooO℃--→
215oC--→2150''C-1→S p 5°C/si, I 10'C/, i,
lh 110°C/1
15.

0°C−一→1O00°C−−→1850”C−一→1
850”C−一→O’CAt、os(92,労つ Atzoi(蟻) 2、0゜ 2°C/−+112h     5°C/ −t−60
0’C−−一→1600℃−+ 1600℃−一一→2
°C/、i、     2h     5°C/ 、i
0°C-1→1O00°C--→1850"C-1→1
850"C-1 → O'CAt, os (92, Atzoi (ants) 2, 0°2°C/-+112h 5°C/-t-60
0'C--1→1600℃-+ 1600℃-11→2
°C/, i, 2h 5 °C/, i
.

600”C−−一→1650’C−−−→1650’C
−一一→1℃/1五、       1h      
 2℃/ ll1n600”C−+ 1500℃−一一
→1500”C−一一→ここで、上記の例においては、
成形棒1に対して機械形りによって字体を形成するよう
にしたが、この代わりに、成形工程において、使用する
成形型、あるいはプレス型に字体の型部を形成しておき
、底形と同時に字体も合わせて形成するようにしてもよ
い。
600"C---1→1650'C---→1650'C
-11→1℃/15, 1h
2℃/ll1n600"C-+ 1500℃-11→1500"C-11→Here, in the above example,
Although the font is formed on the molding rod 1 by machine shaping, instead of this, the font part is formed in the mold or press die used in the molding process, and the font part is formed at the same time as the bottom shape. The font may also be formed accordingly.

また、セラミックスの原料として、TiNを用いた場合
には金色をした高級感のある印鑑を得ることができ、S
iCを使用した場合には黒色、ZrO,を使用した場合
には白色というように、原料を選択することによって、
各色の印鑑を製造することができる。
In addition, when TiN is used as a raw material for ceramics, it is possible to obtain a gold-colored and luxurious seal, and S
By selecting raw materials, for example, black when using iC and white when using ZrO,
Seals of various colors can be manufactured.

(発明の効果) 以上説明したように、本発明の印鑑の製造方法において
は、ファインセラミックスを印鑑の素材として使用する
と共に、ファインセラミックスの焼成前の段階において
成形棒に字体を形成す、るようにしている、従って、本
発明の方法によれば、焼成工程において形成された字体
が不均一に収縮および歪みをおこして変形するので、個
々の焼結体毎に異なる字体の印鑑を製造することができ
る。
(Effects of the Invention) As explained above, in the seal manufacturing method of the present invention, fine ceramics are used as the material for the seal, and fonts are formed on the molded rod at a stage before firing the fine ceramics. Therefore, according to the method of the present invention, the font formed in the firing process shrinks and distorts non-uniformly and is deformed, so it is difficult to manufacture seals with different fonts for each individual sintered body. I can do it.

また、原料を適宜選択することによって、各種の色の印
鑑を製造できるという利点もある。
Another advantage is that seals of various colors can be manufactured by appropriately selecting raw materials.

【図面の簡単な説明】[Brief explanation of drawings]

第1図は本発明の製造工程の一例を示すフローチャート
、第2図は第1図の焼成工程前の段階の成形棒に形成し
た字体を示す斜視図、第3図は第1図の焼成工程を経た
後に得られる字体を示す斜視図である。 符号の説明 A・・・原料調製工程 B・・・混合工程 C・−・−成形工程 D・・−・成形体加工工程 E−・焼成工程 3・−焼成前の字体 4−・−焼成後の字体。
Fig. 1 is a flowchart showing an example of the manufacturing process of the present invention, Fig. 2 is a perspective view showing the font formed on the molded rod before the firing process in Fig. 1, and Fig. 3 is the baking process in Fig. 1. FIG. Explanation of symbols A... Raw material preparation process B... Mixing process C... - Molding process D... Molded body processing process E - Firing process 3 - Before firing Font 4 - - After baking font.

Claims (2)

【特許請求の範囲】[Claims] (1)セラミックスの粉末原料を調製する工程と、調製
した前記粉末原料と添加剤を混合する工程と、混合した
前記粉末原料を印鑑本体の形状に成形する成形工程と、
この成形工程を経て形成された印鑑本体の成形体に対し
て刻字する成形体加工工程と、刻字された前記印鑑本体
の成形体を焼成する焼成工程とからなるファインセラミ
ックス製印鑑の製造方法。
(1) A step of preparing a powder raw material for ceramics, a step of mixing the prepared powder raw material and an additive, a molding step of molding the mixed powder raw material into the shape of a seal body,
A method for manufacturing a fine ceramic seal stamp, which comprises a molded body processing step of inscribing characters on the molded body of the stamp body formed through this molding step, and a firing step of firing the molded body of the stamp body that has been engraved.
(2)請求項第1項に記載の製造方法において、前記成
形体加工工程の代わりに、前記成形工程において同時に
刻字を成形するようになったファインセラミックス製印
鑑の製造方法。
(2) The method for manufacturing a fine ceramic seal according to claim 1, wherein inscriptions are simultaneously formed in the molding step instead of the molded body processing step.
JP20364589A 1989-08-04 1989-08-04 Manufacture of fine ceramic seal Pending JPH0367680A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP20364589A JPH0367680A (en) 1989-08-04 1989-08-04 Manufacture of fine ceramic seal

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP20364589A JPH0367680A (en) 1989-08-04 1989-08-04 Manufacture of fine ceramic seal

Publications (1)

Publication Number Publication Date
JPH0367680A true JPH0367680A (en) 1991-03-22

Family

ID=16477477

Family Applications (1)

Application Number Title Priority Date Filing Date
JP20364589A Pending JPH0367680A (en) 1989-08-04 1989-08-04 Manufacture of fine ceramic seal

Country Status (1)

Country Link
JP (1) JPH0367680A (en)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20020087321A (en) * 2001-05-15 2002-11-22 김익순 Method for manufacturing multipurpose seal
KR100439397B1 (en) * 2001-06-12 2004-07-09 김기태 A ceramics seal and the method thereof
KR100591685B1 (en) * 2003-12-11 2006-06-20 오중산 Composition and method for manufacturing stamp
JP2019059981A (en) * 2017-09-26 2019-04-18 国立大学法人東京工業大学 Method for producing precisely fine molded article of superhard material

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20020087321A (en) * 2001-05-15 2002-11-22 김익순 Method for manufacturing multipurpose seal
KR100439397B1 (en) * 2001-06-12 2004-07-09 김기태 A ceramics seal and the method thereof
KR100591685B1 (en) * 2003-12-11 2006-06-20 오중산 Composition and method for manufacturing stamp
JP2019059981A (en) * 2017-09-26 2019-04-18 国立大学法人東京工業大学 Method for producing precisely fine molded article of superhard material

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